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Nanoengineered myogenic scaffolds for skeletal muscle tissue engineering

机译:对骨骼;肌原性的支架肌肉组织工程

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摘要

Extreme loss of skeletal muscle overwhelms the natural regenerative capability of the body, results in permanent disability and substantial economic burden. Current surgical techniques result in poor healing, secondary injury to the autograft donor site, and incomplete recuperation of muscle function. Most current tissue engineering and regenerative strategies fail to create an adequate mechanical and biological environment that enables cell infiltration, proliferation, and myogenic differentiation. In this study, we present a nanoengineered skeletal muscle scaffold based on functionalized gelatin methacrylate (GelMA) hydrogel, optimized for muscle progenitors’ proliferation and differentiation. The scaffold was capable of controlling the release of insulin-like growth factor 1 (IGF-1), an important myogenic growth factor, by utilizing the electrostatic interactions with LAPONITE® nanoclays (NCs). Physiologically relevant levels of IGF-1 were maintained during a controlled release over two weeks. The NC was able to retain 50% of the released IGF-1 within the hydrogel niche, significantly improving cellular proliferation and differentiation compared to control hydrogels. IGF-1 supplemented medium controls required 44% more IGF-1 than the comparable NC hydrogel composites. The nanofunctionalized scaffold is a viable option for the treatment of extreme muscle injuries and offers scalable benefits for translational interventions and the growing field of clean meat production.
机译:骨骼肌的极端损失了身体的自然再生能力,导致永久性残疾和实质性的经济负担。导致愈合不良,二次损伤自体施主能级,不完全恢复肌肉功能。工程和再生策略失败创建一个适当的机械和生物环境,使细胞渗透,扩散,肌原性的分化。这项研究中,我们报告;该骨骼基于功能化明胶肌肉支架丙烯酸甲酯(GelMA)水凝胶、优化祖细胞的增殖和肌肉分化。控制释放胰岛素样生长因子1 (igf - 1),一个重要的肌原性的增长因素,利用静电与LAPONITE®等关键词(nc)。生理相关的igf - 1水平保持在控释/ 2周。发布的igf - 1在水凝胶,显著提高细胞增殖和分化而控制水凝胶。需要再加44%的比同类数控igf - 1水凝胶复合材料。支架是一个可行的选择治疗极端的肌肉损伤并提供可伸缩的转化干预和好处干净的肉类生产领域增长。

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